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RB1 and TP53 pathways in radiation-induced sarcomas

机译:放射性肉瘤中的RB1和TP53途径

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摘要

The tumour suppressor genes, TP53 and RB1, and four genes involved in their regulation, INK4a, ARF, MDM2 and MDMX, were analysed in a series of 36 post-radiotherapy radiation-induced sarcomas. One-third of the tumours developed in patients carrying a germline mutation of RB1 that predisposed them to retinoblastoma and radiation-induced sarcomas. The genetic inactivation of RB1 and/or TP53 genes was frequently observed in these sarcomas. These inactivations were owing to an interplay between point mutations and losses of large chromosome segments. Radiation-induced somatic mutations were observed in TP53, but not in RB1 or in the four other genes, indicating an early role of TP53 in the radio-sarcomagenesis. RB1 and TP53 genes were biallelically coinactivated in all sarcomas developing in the context of the predisposition, indicating that both genes played a major role in the formation of these sarcomas. In the absence of predisposition, TP53 was biallelically inactivated in one-third of the sarcomas, whereas at least one allele of RB1 was wild type. In both genetic contexts, the TP53 pathway was inactivated by genetic lesions and not by the activation of the ARF/MDM2/MDMX pathway, as recently shown in retinoblastomas. Together, these findings highlight the intricate tissue- and aetiology-specific relationships between TP53 and RB1 pathways in tumorigenesis.
机译:在一系列36例放射治疗后放射诱发的肉瘤中分析了肿瘤抑制基因TP53和RB1,以及参与其调控的四个基因INK4a,ARF,MDM2和MDMX。三分之一的肿瘤是在携带RB1生殖系突变的患者中发展的,这种突变使他们易患视网膜母细胞瘤和放射线诱发的肉瘤。在这些肉瘤中经常观察到RB1和/或TP53基因的遗传失活。这些失活是由于点突变和大染色体区段丢失之间的相互作用。辐射诱导的体细胞突变在TP53中观察到,但在RB1或其他四个基因中未观察到,表明TP53在放射性肉瘤发生中的早期作用。 RB1和TP53基因在易感性情况下发生的所有肉瘤中被双等位共激活,表明这两个基因在这些肉瘤的形成中起主要作用。在没有易感性的情况下,TP53在三分之一的肉瘤中被双等位基因灭活,而至少一个RB1等位基因是野生型。在这两种遗传背景下,TP53途径均因遗传性损伤而失活,而不是由于ARF / MDM2 / MDMX途径的失活,正如最近在视网膜母细胞瘤中所显示的那样。在一起,这些发现突出了肿瘤发生中TP53和RB1途径之间复杂的组织和病因学特异性关系。

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